Double and Triple Differential Cross Sections for Single Ionization of Benzene by Electron Impact
Abstract
1. Introduction
2. Results and Discussion
2.1. Double Differential Ionization Cross Sections (DDCS)
2.2. Triple Differential Ionization Cross Sections (TDCS)
2.3. Semi-Empirical Formula
3. Experimental Setup
4. Conclusions
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Acknowledgments
Conflicts of Interest
Abbreviations
DDCS | Double differential cross section |
TDCS | Triple differential cross section |
MO | Molecular orbital |
HOMO | Highest occupied molecular orbital |
IAM-SCAR+I | Independent atom model with screening corrected additivity rule and interference effects |
BEB | Binary-encounter-Bethe method |
PCI | Post collision interaction |
References
- García Gómez-Tejedor, G.; Fuss, M.C. Biological and Medical Physics, Biomedical Engineering. In Radiation Damage in Biomolecular Systems; García Gómez-Tejedor, G., Fuss, M.C., Eds.; Springer: Dordrecht, The Netherlands, 2012; ISBN 978-94-007-2563-8. [Google Scholar]
- Boudaïffa, B.; Cloutier, P.; Hunting, D.; Huels, M.A.; Sanche, L. Resonant formation of DNA strand breaks by low-energy (3 to 20 eV) electrons. Science 2000, 287, 1658–1660. [Google Scholar] [CrossRef]
- Sanche, L. Low energy electron-driven damage in biomolecules. Eur. Phys. J. D 2005, 35, 367–390. [Google Scholar] [CrossRef]
- Pimblott, S.M.; LaVerne, J.A. Production of low-energy electrons by ionizing radiation. Radiat. Phys. Chem. 2007, 76, 1244–1247. [Google Scholar] [CrossRef]
- Blanco, F.; Muñoz, A.; Almeida, D.; Da Silva, F.F.; Limão-Vieira, P.; Fuss, M.C.; Sanz, A.G.; García, G. Modelling low energy electron and positron tracks in biologically relevant media. Eur. Phys. J. D 2013, 67. [Google Scholar] [CrossRef]
- Sanz, A.G.; Fuss, M.C.; Muñoz, A.; Blanco, F.; Limão-Vieira, P.; Brunger, M.J.; Buckman, S.J.; García, G. Modelling low energy electron and positron tracks for biomedical applications. Int. J. Radiat. Biol. 2012, 88, 71–76. [Google Scholar] [CrossRef]
- Costa, F.; Álvarez, L.; Lozano, A.I.; Blanco, F.; Oller, J.C.; Muñoz, A.; Barbosa, A.S.; Bettega, M.H.F.; Ferreira da Silva, F.; Limão-Vieira, P.; et al. Experimental and theoretical analysis for total electron scattering cross sections of benzene. J. Chem. Phys. 2019, 151, 084310. [Google Scholar] [CrossRef]
- De Souza, G.L.C.; Dos Santos, A.S.; Lucchese, R.R.; Machado, L.E.; Brescansin, L.M.; Manini, H.V.; Iga, I.; Lee, M.T. Theoretical investigation on electron scattering by benzene in the intermediate-energy range. Chem. Phys. 2012, 393, 19–24. [Google Scholar] [CrossRef]
- Barbosa, A.S.; Bettega, M.H.F. Shape resonances, virtual state, and Ramsauer-Townsend minimum in the low-energy electron collisions with benzene. J. Chem. Phys. 2017, 146. [Google Scholar] [CrossRef]
- Makochekanwa, C.; Sueoka, O.; Kimura, M. Comparative study of electron and positron scattering from benzene (C6H6) and hexafluorobenzene (C6F6) molecules. Phys. Rev. A 2003, 68, 8. [Google Scholar] [CrossRef]
- Gianturco, F.A.; Lucchese, R.R. One-electron resonances and computed cross sections in electron scattering from the benzene molecule One-electron resonances and computed cross sections in electron scattering from the benzene molecule. J. Chem. Phys. 2017, 108, 5144–6159. [Google Scholar]
- Itakura, R.; Watanabe, J.; Hishikawa, A.; Yamanouchi, K. Ionization and fragmentation dynamics of benzene in intense laser fields by tandem mass spectroscopy. J. Chem. Phys. 2001, 114, 5598–5606. [Google Scholar] [CrossRef]
- Kjeldsen, T.K.; Bisgaard, C.Z.; Madsen, L.B.; Stapelfeldt, H. Influence of molecular symmetry on strong-field ionization: Studies on ethylene, benzene, fluorobenzene, and chlorofluorobenzene. Phys. Rev. A 2005, 71, 1–12. [Google Scholar] [CrossRef]
- Winney, A.H.; Lee, S.K.; Lin, Y.F.; Liao, Q.; Adhikari, P.; Basnayake, G.; Schlegel, H.B.; Li, W. Attosecond Electron Correlation Dynamics in Double Ionization of Benzene Probed with Two-Electron Angular Streaking. Phys. Rev. Lett. 2017, 119, 1–6. [Google Scholar] [CrossRef] [PubMed]
- Horio, T.; Maruyama, R.; Kishimoto, N.; Ohno, K. A crossed-molecular beam study on collisional ionization dynamics of acetonitrile and benzene molecules with He*(23S) metastable atoms. Chem. Phys. Lett. 2004, 384, 73–79. [Google Scholar] [CrossRef]
- Colyer, C.J.; Bellm, S.M.; Hanne, G.F.; Al-Hagan, O.; Madison, D.; Ning, C.G.; Lohmann, B. Dynamical (e, 2e) studies using tetrahydrofuran as a DNA analogue. J. Phys. Conf. Ser. 2011, 288. [Google Scholar] [CrossRef]
- Builth-Williams, J.D.; Bellm, S.M.; Jones, D.B.; Chaluvadi, H.; Madison, D.H.; Ning, C.G.; Lohmann, B.; Brunger, M.J. Experimental and theoretical investigation of the triple differential cross section for electron impact ionization of pyrimidine molecules. J. Chem. Phys. 2012, 136, 1–8. [Google Scholar] [CrossRef] [PubMed]
- Dal Cappello, C.; Charpentier, I.; Houamer, S.; Hervieux, P.A.; Ruiz-Lopez, M.F.; Mansouri, A.; Roy, A.C. Triple-differential cross sections for the ionization of thymine by electrons and positrons. J. Phys. B At. Mol. Opt. Phys. 2012, 45. [Google Scholar] [CrossRef]
- Khelladi, M.F.; Mansouri, A.; Cappello, C.D.; Charpentier, I.; Hervieux, P.A.; Ruiz-Lopez, M.F.; Roy, A.C. Angular distributions in the double ionization of DNA bases by electron impact. J. Phys. B 2016, 49, 1–12. [Google Scholar] [CrossRef]
- Costa, F.; Traoré-Dubuis, A.; Álvarez, L.; Lozano, A.I.; Ren, X.; Dorn, A.; Limão-Vieira, P.; Blanco, F.; Oller, J.C.; Muñoz, A.; et al. A Complete Cross Section Data Set for Electron Scattering by Pyridine: Modelling Electron Transport in the Energy Range 0–100 eV. Int. J. Mol. Sci. 2020, 21, 6947. [Google Scholar] [CrossRef]
- Dürr, M.; Dimopoulou, C.; Dorn, A.; Najjari, B.; Bray, I.; Fursa, D.V.; Chen, Z.; Madison, D.H.; Bartschat, K.; Ullrich, J. Single ionization of helium by 102 eV electron impact: Three-dimensional images for electron emission. J. Phys. B 2006, 39, 4097–4111. [Google Scholar] [CrossRef]
- Ullrich, J.; Moshammer, R.; Dorn, A.; Dörner, R.; Schmidt, L.P.H.; Schmidt-Böcking, H. Recoil-ion and electron momentum spectroscopy: Reaction-microscopes. Rep. Prog. Phys. 2003, 66, 1463–1545. [Google Scholar] [CrossRef]
- Fuss, M.C.; Sanz, A.G.; Muñoz, A.; Do, T.P.D.; Nixon, K.; Brunger, M.J.; Hubin-Franskin, M.-J.; Oller, J.C.; Blanco, F.; García, G. Interaction model for electron scattering from ethylene in the energy range 1–10000 eV. Chem. Phys. Lett. 2013, 560, 22–28. [Google Scholar] [CrossRef]
- Potts, A.W.; Price, W.C.; Streets, D.G.; Williams, T.A. Photoelectron spectra of benzene and some fluorobenzenes. Gen. Discuss. Faraday Soc. 1972, 54, 168–181. [Google Scholar] [CrossRef]
- Stone, P.M.; Kim, Y.-K. An overview of the BEB method for electron-impact ionization of atoms and molecules. Surf. Interface Anal. 2005, 37, 966–968. [Google Scholar] [CrossRef]
- Karlsson, L.; Mattsson, L.; Jadrny, R.; Bergmark, T.; Siegbahn, K. Valence electron spectra of benzene and the hexafluorides of sulphur, molybdenum, tungsten and uranium: An application of multichannel detector technique to UV-valence electron spectroscopy. Phys. Scr. 1976, 14, 230–241. [Google Scholar] [CrossRef]
- Ren, X.; Amami, S.; Hossen, K.; Ali, E.; Ning, C.; Colgan, J.; Madison, D.; Dorn, A. Electron-impact ionization of H2O at low projectile energy: Internirmalized triple-differential cross sections in three-dimensional kinematics. Phys. Rev. A 2017, 95, 022701. [Google Scholar] [CrossRef]
- Hossen, K.; Ren, X.; Wang, E.; Gong, M.; Li, X.; Zhang, S.B.; Chen, X.; Dorn, A. Triple-differential cross sections for single ionization of CO 2 by 100 eV electron impact. J. Phys. B 2018, 51, 215201. [Google Scholar] [CrossRef]
- Ali, E.; Ren, X.; Dorn, A.; Ning, C.; Colgan, J.; Madison, D. Experimental and theoretical triple-differential cross sections for tetrahydrofuran ionized by low-energy 26-eV-electron impact. Phys. Rev. A 2016, 93, 062705. [Google Scholar] [CrossRef]
- Samardzic, O.; Brunger, M.J.; Grisogono, A.-M.; Weigold, E. Electron momentum spectroscopy studies on ring compounds. I. Benzene. J. Phys. B 1993, 26, 3921–3935. [Google Scholar] [CrossRef]
- Wang, E.; Ren, X.; Gong, M.; Ali, E.; Wang, Z.; Ma, C.; Madison, D.; Chen, X.; Dorn, A. Triple-differential cross sections for (e, 2e) electron-impact ionization dynamics of tetrahydrofuran at low projectile energy. Phys. Rev. A 2020, 102, 062813. [Google Scholar] [CrossRef]
- Builth-Williams, J.D.; da Silva, G.B.; Chiari, L.; Jones, D.B.; Chaluvadi, H.; Madison, D.H.; Brunger, M.J. Dynamical (e,2e) studies of tetrahydropyran and 1,4-dioxane. J. Chem. Phys. 2014, 140, 214312. [Google Scholar] [CrossRef] [PubMed]
- Jones, D.B.; Ali, E.; Ning, C.G.; Ferreira da Silva, F.; Ingólfsson, O.; Lopes, M.C.A.; Chakraborty, H.S.; Madison, D.H.; Brunger, M.J. A dynamical (e,2e) investigation into the ionization of the outermost orbitals of R -carvone. J. Chem. Phys. 2019, 151, 124306. [Google Scholar] [CrossRef] [PubMed]
- Da Silva, G.B.; Neves, R.F.C.; Chiari, L.; Jones, D.B.; Ali, E.; Madison, D.H.; Ning, C.G.; Nixon, K.L.; Lopes, M.C.A.; Brunger, M.J. Triply differential (e,2e) studies of phenol. J. Chem. Phys. 2014, 141, 124307. [Google Scholar] [CrossRef] [PubMed]
- Lozano, A.I.; Oller, J.C.; Jones, D.B.; Bettega, M.H.F.; Lima, P.; Lima, M.A.P.; White, R.D.; Brunger, M.J.; Blanco, F.; Mun, A. Total electron scattering cross sections from para -benzoquinone in the energy range 1–200 eV. Phys. Chem. Chem. Phys. 2018. [Google Scholar] [CrossRef] [PubMed]
- Blanco, F.; Rosado, J.; Illana, A.; García, G. Comparison of two screening corrections to the additivity rule for the calculation of electron scattering from polyatomic molecules. Phys. Lett. Sect. A Gen. At. Solid State Phys. 2010, 374, 4420–4424. [Google Scholar] [CrossRef]
- Blanco, F.; García, G. Screening corrections for calculation of electron scattering differential cross sections from polyatomic molecules. Phys. Lett. 2004, 330, 230–237. [Google Scholar] [CrossRef]
MO | IE (eV) | σBEB (10−20 m2) |
---|---|---|
1e1g | 9.25 | 3.93 |
3e2g | 11.50 | 2.49 |
1a2u | 12.15 | 1.34 |
3e1u | 13.85 | 1.96 |
1b2u | 14.63 | 0.89 |
2b1u | 15.40 | 0.83 |
3a1g | 16.85 | 0.76 |
2e2g | 18.60 | 1.10 |
2e1u | 22.10 | 0.56 |
2a1g | 28.70 | 0.22 |
30 eV | 40 eV | 50 eV | ||||
---|---|---|---|---|---|---|
Angle (deg) | DDCS | δ | DDCS | δ | DDCS | δ |
4 | - | - | 0.1191 | 0.0238 | - | - |
7 | 0.2193 | 0.0438 | 0.0614 | 0.0123 | - | - |
10 | 0.1647 | 0.0329 | 0.0513 | 0.0102 | - | - |
13 | 0.1188 | 0.0237 | 0.0386 | 0.0077 | - | - |
16 | 0.0814 | 0.0163 | 0.0262 | 0.0052 | 0.0112 | 0.0022 |
19 | 0.0534 | 0.0107 | 0.02 | 0.0040 | 0.0095 | 0.0019 |
22 | 0.0383 | 0.0077 | 0.0161 | 0.0032 | 0.0079 | 0.0016 |
25 | 0.0294 | 0.0059 | 0.0131 | 0.0026 | 0.007 | 0.0014 |
28 | - | - | 0.011 | 0.0022 | 0.0062 | 0.0012 |
31 | - | - | 0.0107 | 0.0021 | 0.0054 | 0.0011 |
34 | - | - | - | - | 0.0046 | 0.0009 |
37 | - | - | - | - | 0.0042 | 0.0008 |
40 | - | - | - | - | 0.0036 | 0.0007 |
43 | - | - | 0.0055 | 0.0011 | 0.0034 | 0.0007 |
46 | - | - | 0.0047 | 0.0009 | 0.0035 | 0.0007 |
49 | - | - | 0.0035 | 0.0007 | - | - |
52 | 0.0046 | 0.0009 | 0.004 | 0.0008 | - | - |
55 | 0.0033 | 0.0007 | - | - | 0.0039 | 0.0008 |
58 | - | - | 0.0048 | 0.0010 | 0.0029 | 0.0006 |
75 | - | - | - | - | 0.0039 | 0.0008 |
78 | - | - | 0.0054 | 0.0011 | - | - |
81 | - | - | 0.0068 | 0.0014 | 0.0034 | 0.0007 |
96 | 0.0023 | 0.0005 | 0.0039 | 0.0008 | 0.0026 | 0.0005 |
99 | 0.0022 | 0.0004 | - | - | - | - |
102 | - | - | 0.0036 | 0.0007 | 0.0022 | 0.0004 |
117 | - | - | - | - | 0.0029 | 0.0006 |
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Lozano, A.I.; Costa, F.; Ren, X.; Dorn, A.; Álvarez, L.; Blanco, F.; Limão-Vieira, P.; García, G. Double and Triple Differential Cross Sections for Single Ionization of Benzene by Electron Impact. Int. J. Mol. Sci. 2021, 22, 4601. https://doi.org/10.3390/ijms22094601
Lozano AI, Costa F, Ren X, Dorn A, Álvarez L, Blanco F, Limão-Vieira P, García G. Double and Triple Differential Cross Sections for Single Ionization of Benzene by Electron Impact. International Journal of Molecular Sciences. 2021; 22(9):4601. https://doi.org/10.3390/ijms22094601
Chicago/Turabian StyleLozano, Ana I., Filipe Costa, Xueguang Ren, Alexander Dorn, Lidia Álvarez, Francisco Blanco, Paulo Limão-Vieira, and Gustavo García. 2021. "Double and Triple Differential Cross Sections for Single Ionization of Benzene by Electron Impact" International Journal of Molecular Sciences 22, no. 9: 4601. https://doi.org/10.3390/ijms22094601
APA StyleLozano, A. I., Costa, F., Ren, X., Dorn, A., Álvarez, L., Blanco, F., Limão-Vieira, P., & García, G. (2021). Double and Triple Differential Cross Sections for Single Ionization of Benzene by Electron Impact. International Journal of Molecular Sciences, 22(9), 4601. https://doi.org/10.3390/ijms22094601